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Published on: January 28, 2020
Correlation between adiponectin, chemerin, vascular endothelial growth factor and epicardial fat volume in patients
Qixin Wu1, Yuxiang Chen2, Song Chen3
1Department of Radiology, Chongzuo People's Hospital, Chongzuo, Guangxi 532200, P.R. China.
Insights
Epicardial fat volume is linked to coronary artery disease (CAD) progression. Higher epicardial fat correlates with lower adiponectin and higher chemerin/VEGF, indicating these factors are risk factors for vascular remodeling in CAD patients.
Area of Science:
- Cardiology
- Biochemistry
- Medical Imaging
Background:
- Epicardial fat, a local visceral fat depot, surrounds coronary arteries and may promote coronary atherosclerosis via inflammatory cytokines.
- Increased epicardial fat mass is associated with higher incidence of coronary artery disease (CAD), coronary plaque development, myocardial ischemia, and atrial fibrillation.
Purpose of the Study:
- To explore the correlation between adiponectin, chemerin, and vascular endothelial growth factor (VEGF) with epicardial fat volume in CAD patients.
- To analyze risk factors for vascular remodeling in patients with coronary artery disease.
Main Methods:
- Compared 50 CAD patients with 50 healthy controls.
- Utilized RT-qPCR for gene expression analysis (adiponectin, chemerin, VEGF) and 64-slice dual-source CT for epicardial fat volume measurement.
- Employed Pearson's correlation, logistic regression, and ROC curve analysis to assess relationships and risk factors.
Main Results:
- CAD patients exhibited significantly larger epicardial fat volume and lower adiponectin expression compared to controls (P<0.001).
- CAD patients showed higher chemerin and VEGF expression than controls (P<0.001).
- In CAD patients, adiponectin expression decreased with increasing epicardial fat volume, while chemerin and VEGF expression increased (P<0.001). Epicardial fat volume, adiponectin, chemerin, and VEGF were identified as independent risk factors for vascular remodeling.
Conclusions:
- Epicardial fat volume, adiponectin, chemerin, and VEGF are significant independent risk factors for vascular remodeling in coronary artery disease.
- The expression levels of adiponectin, chemerin, and VEGF can serve as indicators reflecting epicardial fat volume in CAD patients.
Abstract:
Epicardial fat, a local visceral fat depot surrounded by visceral pericardial sac, surrounds the coronary arteries for most of their course and may contribute to the development of coronary atherosclerosis by local production of inflammatory cytokines. Some studies on non-invasive measurement of epicardial fat mass have shown that epicardial fat mass is associated with the increased incidence of coronary artery disease (CAD), onset and progression of coronary plaque, mainly including major adverse cardiovascular events, myocardial ischemia, and atrial fibrillation. In the present study the correlation of adiponectin, chemerin, and vascular endothelial growth factor (VEGF) with the epicardial fat volume in patients with coronary artery disease was explored, and the risk factors for vascular remodeling of CAD patients were analyzed. A total of 50 CAD patients, treated in Chongzuo People's Hospital from August 2017 to September 2018, were enrolled as the observation group, and further 50 healthy individuals, who underwent physical examinations in the hospital at the same period, were enrolled as the control group. RT-qPCR was adopted to detect the expression levels of adiponectin, chemerin and VEGF in the two groups, a 64-slice dual-source CT to detect epicardial fat volume, and Pearson's correlation to analyze adiponectin, chemerin, VEGF and epicardial fat volume. Logistic regression analysis was performed to analyze the risk factors for vascular remodeling in CAD patients, and a receiver operating characteristic (ROC) curve analysis was used to analyze the value of indexes with multifactorial significance in vascular remodeling. The observation group showed obviously larger epicardial fat volume than the control group (P<0.001), lower adiponectin expression than the control group (P<0.001), and higher chemerin and VEGF expression than the control group (P<0.001). In the observation group, adiponectin expression decreased with the increase of epicardial fat volume (P<0.001), while the expression of chemerin and VEGF increased with the increase of epicardial fat volume (P<0.001). Remodeling occurred in 27 of the 50 patients. ROC curve analysis showed that the areas under the curves of adiponectin, chemerin, VEGF and epicardial fat volume were 0.697, 0.652, 0.696 and 0.689, respectively. Epicardial fat volume, adiponectin, chemerin and VEGF are independent risk factors for vascular remodeling and the expression of adiponectin, chemerin and VEGF can reflect epicardial fat volume.
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